WO2011020420A1 - 分体挂壁式空调器及其扫风结构 - Google Patents

分体挂壁式空调器及其扫风结构 Download PDF

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Publication number
WO2011020420A1
WO2011020420A1 PCT/CN2010/076027 CN2010076027W WO2011020420A1 WO 2011020420 A1 WO2011020420 A1 WO 2011020420A1 CN 2010076027 W CN2010076027 W CN 2010076027W WO 2011020420 A1 WO2011020420 A1 WO 2011020420A1
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WO
WIPO (PCT)
Prior art keywords
blade
sweeping
base
link
wind sweeping
Prior art date
Application number
PCT/CN2010/076027
Other languages
English (en)
French (fr)
Inventor
张辉
钟明生
叶务占
韩鹏
张华中
王苗
Original Assignee
珠海格力电器股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 珠海格力电器股份有限公司 filed Critical 珠海格力电器股份有限公司
Publication of WO2011020420A1 publication Critical patent/WO2011020420A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/0007Indoor units, e.g. fan coil units
    • F24F1/0011Indoor units, e.g. fan coil units characterised by air outlets
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/14Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre
    • F24F13/15Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers built up of tilting members, e.g. louvre with parallel simultaneously tiltable lamellae

Definitions

  • the present invention relates to the field of home appliances, and in particular to a split wall-mounted air conditioner and a wind sweeping structure thereof.
  • BACKGROUND OF THE INVENTION At present, the sweeping structure of a split wall-mounted air conditioner on the market drives all the sweeping blades together by a single or double-twisted connecting rod to be driven by a motor, and all the blades run in the same direction during operation. In the existing wind sweeping structure of this type, it takes a long time to penetrate the blade into the connecting rod due to the large number of blades, which affects the installation efficiency.
  • the present invention is directed to a wind sweeping structure of a split wall-mounted air conditioner, which can solve the problem that the existing wind sweeping structure requires a long time to penetrate the blade into the connecting rod, which affects the installation efficiency. problem.
  • the present invention provides a wind sweeping structure of a split wall-mounted air conditioner, the wind sweeping structure comprising: a vortex tongue mounted on a bottom case of the air conditioner; and a base having a suitable installation a structure on the vortex; a plurality of sweeping blades projecting laterally from the base; the blade link is snapped into the plurality of sweeping blades.
  • the wind sweeping structure further comprises: a transmission mechanism connected to the blade connecting rod; and a motor connected to the transmission mechanism.
  • the transmission mechanism comprises: a bracket connecting rod, which is hinged on the vortex tongue, and the bracket connecting rod connects the blade joint 4; the sweeping crank is connected to the bracket 4 and connected to the motor. Further, the base is engaged with the vortex tongue.
  • the sweeping blade comprises: a swinging blade, a twisting portion connected to the swinging blade, a connecting rib; a swinging blade, a twisting portion connected to the swinging blade, and a connecting structure of the connecting rib and the base; the connecting rib from the base Lateral extension; the twisted portion connected to the pendulum is made of an elastic material and is disposed on the connecting rib; On the twisting portion; the blade link is snapped into the pendulum.
  • the connecting rib is elongated; the twisting portion is a sheet-shaped rectangle, and is disposed at one end of the connecting rib away from the base. Further, the top of each pendulum has an open slot; the blade link is snapped into the open slot.
  • a bump is disposed on the base; a counterbore is disposed on the bump; a groove is disposed on the vortex tongue; a buckle is disposed in the groove; and the groove has a structure suitable for cooperating with the bump; The buckle has a structure suitable for snapping into the counterbore. Further, the thickness of the pendulum blade is greater than the thickness of the twisting portion.
  • the present invention also provides an air conditioner comprising a front wind sweeping structure.
  • FIG. 1 is a view schematically showing a three-dimensional structure of a wind sweeping structure of a split wall-mounted air conditioner according to an embodiment of the present invention, in which an air conditioner bottom case is removed;
  • FIG. 2 schematically shows The three-dimensional structure of the wind sweeping structure of the wall-mounted air conditioner, in which the air conditioner bottom case is installed.
  • 3 is a view schematically showing the structure of a base in a wind sweeping structure of a split wall-mounted air conditioner according to an embodiment of the present invention; and
  • FIG. 4 is a view schematically showing a base and a tongue in the wind sweeping structure of the present invention. Installation structure.
  • the wind sweeping structure of the split wall-mounted air conditioner includes: a bolster 10 mounted on the bottom case 80; and a base 70 having a suitable fit on the vortex tongue 10
  • the upper structure, for example, the base 70 is engaged with the volute tongue 10, so that installation and disassembly are convenient.
  • the wind sweeping structure of the present invention further includes: a plurality of sweeping blades, each of the sweeping blades having the same structure and the same mounting direction, so that the swinging direction is consistent to ensure the stability of the blowing region; and according to the distribution position of the blade connecting rod 50,
  • the sweeping blades include left and right wind blades 40, and the number of left and right wind blades 60 may be the same or different. Left wind blade 40 and right shown in FIG. The number of the sweeping blades 60 is different, wherein the left sweeping blade 40 has a total of six sets of blades, and the right sweeping vane 60 has a total of four sets of blades.
  • the sweeping blades extend laterally from the base 70 for swinging left and right; the blade link 50, as shown in FIG.
  • the blade link 50 may be a straight rod with a return bend in the middle and at the end, snap-fit In a plurality of sweeping blades, in order to install and cooperate with the sweeping blades and other components according to the situation; the transmission mechanism is connected to the blade connecting rod 50; and a motor (not shown) is connected to the transmission mechanism.
  • the transmission mechanism comprises: a bracket link 30 hinged on the bolster 10, and the bracket link 30 is connected to the blade link 50; the wind sweeping crank 20 is connected to the bracket link 30 and the motor connection.
  • the bracket link 30 is a symmetrical elliptical plate, and the middle of the bracket link 30 is a shaft hinged with the blade 10, and the two ends of the bracket link 30 are respectively connected to the blade link 50 and the sweeping crank 20, so that The drive is more reasonable and stable.
  • the shape of the bracket link 30 may be various suitable shapes, and the manner in which the bracket link 30 is coupled to the blade link 50 and the sweeping crank 20 is not limited to the two ends of the bracket link 30, respectively. .
  • the sweeping blade includes: a swinging blade 66, a twisting portion 64 connected to the swinging blade, a connecting rib 62; a swinging blade 66, a twisting portion 64 connected to the swinging blade, and a connecting rib 62 and
  • the base 70 has an integral structure, and the entire sweeping blade can be injection molded at one time, so that the sweeping blade can be produced while the base 70 is being formed, thereby saving the time for the sweeping blade to be mounted on the base 70. It also saves installation time of the sweeping structure and improves production efficiency.
  • the connecting ribs 62 may have an elongated shape extending from the side of the base 70.
  • a twisting portion 64 connected to the pendulum blade is provided on the connecting rib 62, for example, on the connecting rib 62 One end of the base 70.
  • the twisting portion 64 is made of an elastic material and supports the swinging vanes 66.
  • the twisting portion 64 connected to the pendulum blade may have a rectangular sheet shape, and the thickness thereof may be thinner.
  • the thickness of the twisting portion 64 is smaller than the thickness of the swinging blade 66, so that the swinging blade 66 drives the twisting portion 64 to twist.
  • the twisting direction of the twisting portion 64 is the same as the moving direction of the blade connecting member 50.
  • the blade is moved about 50 degrees, and the swinging blade 66 is twisted by the pulling of the blade connecting rod 50 to realize the swinging blade 66. Swing to sweep left and right.
  • the sweeping blades (including the twisted portions 64 connected to the pendulum blades) can generally be made of plastic, such as polyethylene or polypropylene plastic or other plastics.
  • the thickness of the twisted portion 64 is, for example, between 0.2 mm and 1 mm.
  • the thickness of the twisting portion 64 is 0.3 mm, 0.4 mm, 0.5 mm, 0.6 mm, 0.7 mm, and 0.8 mm. Such a thickness allows the twisted portion 64 to have better elasticity.
  • the thickness of the connecting rib 62 is thicker than that of the twisting portion 64, and is added to the shape of the elongated strip and is disposed at one end of the connecting rib 62 away from the base 70. Therefore, the twisting portion 64 is spaced from the base 70. The connecting end is farther, and the twisting of the twisting portion 64 does not affect the stable connection of the connecting rib 62 and the connecting end of the base 70.
  • the blade link 50 can be engaged with the swinging blade 66 of each of the sweeping blades to drive the swinging blade 66 to swing or twist on the twisting portion 64, thereby achieving sweeping.
  • the swinging blade 66 has a sheet shape, the thickness of the swinging blade 66 is larger than the thickness of the twisting portion 64, and the area of the swinging blade 66 is also larger than the area of the twisting portion 64.
  • the area of the swinging blade 66 is five times the area of the twisting portion 64. Up to ten times or more, and the swinging blade 66-end is connected to the twisting portion 64, and the other end is suspended near the connecting rib 62, and the edge of the floating end of the swinging blade 66 is similar to the shape of the edge of the connecting rib 62, for example.
  • the edge of the free end of the pendulum leaf 66 is parallel to the edge of the connecting rib 62.
  • the length of the free end of the swinging blade 66 may be greater than the length of the connecting end of the swinging blade 66 and the twisting portion 64, so that in the wind sweeping, on the one hand, after the swinging blade 66 is pulled by the blade connecting member 50, the elastic twisting portion 64 is subjected to The swinging of the swinging blade 66 causes a twist; on the other hand, since the thickness of the swinging blade 66 is large, the sweeping of the swinging blade 66 is relatively strong.
  • each sweeping blade such as the swinging vane 66
  • the blade link 50 has a structure that cooperates with the open slot 68 so that the blade link 50 can be snapped onto In each of the open slots 68 of the sweeping blades.
  • the blade link 50 is conveniently mounted in each of the sweeping blades from the upper side of each of the sweeping blades, and the mounting efficiency is high.
  • the mounting efficiency is high.
  • the bump 65 for example, may be a sheet metal structure, and is disposed on the base 70; the counterbore 63, For example, a rectangle, The number is three, and may be other suitable shapes and numbers, which are disposed on the bump 65, for example, at the bottom of the bump 65; the groove 12 is disposed on the bolster 10; as shown in FIG. 4, the buckle 13 , disposed in the recess 12, for example, disposed on the sidewall of the bottom of the recess 12; the recess 12 has a structure suitable for mating with the bump 65 to receive the bump 65 or to engage with the bump 65; It has a structure suitable for snapping into the counterbore 63. Of course, you can also use other methods to make the card.
  • the vortex tongue 10 is inserted into the bottom casing 80 through the card slot 11 to complete the installation of the wind sweeping structure on the bottom casing.
  • the sweeping motor is fixed to the left side of the air outlet, and the wind sweeping crank 20 is hinged to the crank mounted on the motor shaft, and the sweeping motor can drive the wind sweeping crank 20, thereby driving the sweeping blade to swing left and right to realize automatic sweeping control.
  • the present invention also provides an air conditioner comprising the above-described wind sweeping structure.
  • the above-mentioned embodiments of the present invention achieve the following technical effects: Since the sweeping blades are all disposed on the base, the blade connecting rod is engaged with the sweeping blade, so that only the sweeping blade is required The installation can be connected to a plurality of sweeping blades, so the existing wind sweeping structure has many blades, and it takes a long time to insert the blades into the connecting rod, which affects the installation efficiency, and then the blade connecting rod Connected to the motor to achieve automatic sweeping and improved installation efficiency.
  • the wind-swept connecting rods string the two sets of blades, the running direction of the sweeping blades is the same, the air supply area is stable, and the automatic left and right sweeping control can be realized by the motor driving.

Description

分体挂壁式空调器及其扫风结构 技术领域 本发明涉及家电领域, 具体而言, 涉及一种分体挂壁式空调器及其扫风 结构。 背景技术 目前, 市场上的分体挂壁式空调器的扫风结构通过一才艮或两才艮连杆将所 有的扫风叶片串起来用一个电机带动, 运行时所有叶片往同一方向运行。 现有的这种方式的扫风结构由于叶片较多, 将叶片穿入连杆需花费较长 时间, 影响安装效率。 发明内容 本发明旨在提供一种分体挂壁式空调器的扫风结构, 能够解决现有的扫 风结构由于叶片较多, 将叶片穿入连杆需花费较长时间, 影响安装效率的问 题。 为实现上述目的, 本发明提供了一种分体挂壁式空调器的扫风结构, 该 扫风结构包括: 涡舌, 安装在所述空调器的底壳上; 基座, 具有适宜安装在 涡舌上的结构; 多个扫风叶片, 从基座的侧向伸出; 叶片连杆, 卡接在多个 扫风叶片中。 进一步地, 扫风结构还包括: 传动机构, 与叶片连杆连接; 电机, 与传 动机构连接。 进一步地, 传动机构包括: 支架连杆, 铰接在涡舌上, 并且支架连杆连 接叶片连 4干; 扫风曲柄, 与支架连 4干连接并与电机连接。 进一步地, 基座与涡舌卡接。 进一步地, 扫风叶片包括: 摆叶、 与摆叶连接的扭动部、 连接肋; 摆叶、 与摆叶连接的扭动部以及连接肋与基座为一体式结构; 连接肋从基座的侧向 伸出; 与摆叶连接的扭动部由弹性材料制成并设置在连接肋上; 摆叶设置在 扭动部上; 叶片连杆卡接在摆叶中。 进一步地, 连接肋为长条形; 扭动部为片状矩形, 设置在连接肋上远离 基座的一端。 进一步地, 每个摆叶的顶部具有开口槽; 叶片连杆卡接在开口槽中。 进一步地, 在基座上设置有凸块; 凸块上设置有沉孔; 在涡舌上设置有 凹槽; 凹槽中设置有卡扣; 凹槽具有适合与凸块相配合的结构; 卡扣具有适 合与沉孔相卡接的结构。 进一步地, 摆叶的厚度大于扭动部的厚度。 本发明还提供了一种空调器, 该空调器包括前面的扫风结构。 在本发明中, 由于扫风叶片都设置在基座上, 叶片连杆与多个扫风叶片 卡接, 所以只需一次安装叶片连杆即可穿设在多个扫风叶片中, 从而克服了 现有的扫风结构由于叶片较多, 将叶片穿入连杆需花费较长时间、 影响安装 效率的问题, 进而达到了自动扫风和提高安装效率的效果。 附图说明 构成本申请的一部分的附图用来提供对本发明的进一步理解, 本发明的 示意性实施例及其说明用于解释本发明, 并不构成对本发明的不当限定。 在 附图中: 图 1示意性示出了 居本发明实施例的分体挂壁式空调器的扫风结构的 立体结构, 其中, 去除了空调器底壳; 图 2示意性示出了分体挂壁式空调器的扫风结构的立体结构, 其中, 安 装了空调器底壳。 图 3示意性示出了 居本发明实施例的分体挂壁式空调器的扫风结构中 基座的结构; 以及 图 4示意性示出了本发明的扫风结构中基座与涡舌的安装结构。 具体实施方式 下面将参考附图并结合实施例, 来详细说明本发明。 图 1 至图 4 示意性示出了根据本发明实施例的扫风结构的各种内外结 构。 如图 1和图 2所示, 居本发明实施例的分体挂壁式空调器的扫风结构 包括: 涡舌 10 , 安装在底壳 80上; 基座 70 , 具有适宜安装在涡舌 10上的 结构, 例如, 基座 70与涡舌 10卡接, 这样, 安装和拆卸方便。 本发明的扫风结构还包括: 多个扫风叶片, 每个扫风叶片结构相同并且 安装方向相同, 以便摆动方向一致保证吹风区域稳定; 才艮据其在叶片连杆 50 的分布位置, 多个扫风叶片包括左扫风叶片 40和右扫风叶片 60 , 左扫风叶 片 40和右扫风叶片 60的数目可以相同, 也可以不相同, 图 1所示的左扫风 叶片 40和右扫风叶片 60的数目不同, 其中左扫风叶片 40共含有六组叶片, 右扫风叶片 60共含有四组叶片。 扫风叶片从基座 70的侧向伸出用于左右摆 动扫风; 叶片连杆 50, 如图 1所示, 叶片连杆 50可以是中间以及端部带有 回弯的直杆, 卡接在多个扫风叶片中, 以便根据情况与扫风叶片以及其他各 部件进行安装、 配合; 传动机构, 与叶片连杆 50连接; 电机(图中未示出), 与传动机构连接。 优选地, 如图 1所示, 传动机构包括: 支架连杆 30 , 铰接在涡舌 10上, 并且支架连杆 30连接叶片连杆 50; 扫风曲柄 20 , 与支架连杆 30连接并与 电机连接。 例如, 支架连杆 30为对称的椭圓形板, 支架连杆 30的中部为与 涡舌 10铰接的轴, 支架连杆 30的两端分别连接叶片连杆 50和扫风曲柄 20 , 这样, 传动更加合理、 稳定。 当然, 支架连杆 30 的形状可以为各种合适的 形状, 并且, 支架连杆 30与叶片连杆 50和扫风曲柄 20的连接方式也不限 于釆用支架连杆 30的两端分别进行连接。 优选地, 如图 3 所示, 扫风叶片包括: 摆叶 66、 与摆叶连接的扭动部 64、 连接肋 62 ; 摆叶 66、 与摆叶连接的扭动部 64 以及连接肋 62与基座 70 为一体式结构, 整个扫风叶片可以一次注塑成形, 这样可以通过在制作基座 70的同时, 制作出扫风叶片, 从而节省了扫风叶片安装在基座 70的时间, 因而, 也节省了扫风结构的安装时间, 提高生产效率。 如图 3所示, 连接肋 62的形状可以为长条形, 从基座 70的侧向伸出。 与摆叶连接的扭动部 64设置在连接肋 62上, 例如设置在连接肋 62上远离 基座 70的一端。 扭动部 64由弹性材料制成并支撑摆叶 66。 与摆叶连接的扭动部 64 可以为矩形的片状, 其厚度可以故得薄一些, 例如, 扭动部 64的厚度小于摆叶 66的厚度, 以便摆叶 66带动扭动部 64扭 动。 扭动部 64扭动的方向与叶片连才干 50的移动方向一致, 例如, 叶片连才干 50左右移动, 摆叶 66受叶片连杆 50的拉动带动扭动部 64左右扭动, 实现 摆叶 66的摆动以进行左右扫风。 扫风叶片 (包括与摆叶连接的扭动部 64 )通常可以由塑料做成, 例如由 聚乙烯塑料或聚丙烯塑料制成或其他塑料制成。 扭动部 64 的厚度例如在 0.2mm至 lmm之间。 优选地, 扭动部 64的厚度为 0.3mm、 0.4mm, 0.5mm, 0.6mm, 0.7mm, 0.8mm。 这样的厚度可以使得扭动部 64具有更好的弹性。 连接肋 62的厚度相对于扭动部 64要厚一些, 加上其长条形的形状, 并 设置在连接肋 62上远离基座 70的一端, 所以, 扭动部 64距离与基座 70的 连接端较远, 扭动部 64的扭动并不影响连接肋 62与基座 70连接端的稳定 连接。 叶片连杆 50可以卡接在每个扫风叶片的摆叶 66上, 带动摆叶 66在扭 动部 64上摆动或扭动, 从而实现扫风。 通常摆叶 66呈片状, 摆叶 66的厚 度大于扭动部 64的厚度, 摆叶 66的面积也大于扭动部 64的面积, 通常摆 叶 66的面积为扭动部 64的面积五倍至十倍甚至更多, 并且摆叶 66—端与 扭动部 64连接, 另一端靠近连接肋 62的一侧为悬空, 摆叶 66悬空端的边 缘与连接肋 62的边缘的形状相类似, 例如, 摆叶 66悬空端的边缘与连接肋 62的边缘相平行。 摆叶 66悬空端的长度可以大于摆叶 66与扭动部 64连接 端连接的长度, 以使在扫风中, 一方面使摆叶 66受叶片连才干 50拉动后, 弹 性的扭动部 64受摆叶 66的带动而发生扭动; 另一方面, 由于摆叶 66的厚 度较大, 摆叶 66的扫风较为有力。 优选地, 如图 3所示, 每个扫风叶片的顶部, 例如摆叶 66上具有开口 槽 68; 叶片连杆 50具有与开口槽 68相配合的结构, 因而叶片连杆 50可以 卡接在每个扫风叶片的开口槽 68中。 这样, 使叶片连杆 50方便地从每个扫 风叶片的上侧快速地安装在每个扫风叶片中, 安装效率高。 摆叶与摆叶连接的扭动部与摆叶连接的扭动部优选地, 如图 3所示, 凸 块 65 , 例如可以为钣金式结构, 设置在基座 70上; 沉孔 63 , 例如为矩形, 数目为三个, 也可以为其他合适形状和数目, 设置在凸块 65 上, 例如, 设 置在凸块 65底部; 凹槽 12 , 设置在涡舌 10上; 如图 4所示, 卡扣 13 , 设 置在凹槽 12 中, 例如设置在凹槽 12底部的侧壁上; 凹槽 12具有适合与凸 块 65相配合的结构, 以容纳凸块 65或与凸块 65卡接; 卡扣 13具有适合与 沉孔 63相卡接的结构。 当然, 还可以釆用其他方式进行卡接。 扫风叶片、连 4干 50以及其他部件组装完成后, 涡舌 10通过卡槽 11卡入 底壳 80 上即可一次完成扫风结构在底壳上的安装。 扫风电机固定在出风口 左侧, 扫风曲柄 20 与安装在电机轴上的曲柄铰接, 扫风电机即可驱动扫风 曲柄 20 , 从而带动扫风叶片左右摆动实现自动扫风控制。 本发明还提供了一种空调器, 该空调器包括前面所述的扫风结构。 从以上的描述中,可以看出,本发明上述的实施例实现了如下技术效果: 由于扫风叶片都设置在基座上, 叶片连杆与扫风叶片卡接, 因而只需扫 风叶片一次安装即可连接在多个扫风叶片中, 所以克月艮了现有的扫风结构由 于叶片较多, 将叶片串入连杆需花费较长时间, 影响安装效率的问题, 进而 叶片连杆与电机连接, 达到了自动扫风和提高安装效率的效果。 而且扫风连 杆将两组叶片串起来, 扫风叶片左右运行方向一致, 送风区域稳定, 还可以 通过电机驱动实现自动左右扫风控制。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本 领域的技术人员来说, 本发明可以有各种更改和变化。 凡在本发明的 ^"神和 原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的保护 范围之内。

Claims

权 利 要 求 书
1. 一种分体挂壁式空调器的扫风结构, 其特征在于, 包括:
涡舌 ( 10), 安装在所述空调器的底壳 (80) 上;
基座 (70), 具有适宜安装在所述涡舌 ( 10) 上的结构; 多个扫风叶片, 设置在所述基座 ( 70 ) 上;
叶片连杆 ( 50 ), 卡接在所述多个扫风叶片中。
2. 根据权利要求 1所述的扫风结构, 其特征在于, 还包括: 传动机构, 与所述叶片连杆 (50) 连接; 电机, 与所述传动机构连接。
3. 根据权利要求 2所述的扫风结构, 其特征在于,
所述传动机构包括:
支架连杆 ( 30 ), 铰接在所述涡舌( 10 )上, 并且所述支架连杆 ( 30 ) 连接所述叶片连杆 (50);
扫风曲柄 (20), 与所述支架连杆 (30) 连接并与所述电机连接。
4. 根据权利要求 1所述的扫风结构, 其特征在于, 所述基座 (70) 与所 述涡舌 ( 10) 卡接。
5. 根据权利要求 1所述的扫风结构, 其特征在于,
所述扫风叶片包括: 摆叶 (66)、 与所述摆叶连接的扭动部 (64)、 连接肋 (62);
所述摆叶( 66 )、所述与摆叶连接的扭动部( 64 )以及所述连接肋( 62 ) 与所述基座 (70) 为一体式结构;
所述连接肋 ( 62 )从所述基座 ( 70 ) 的侧向伸出;
与所述摆叶连接的扭动部 (64) 由弹性材料制成并设置在所述连接 肋 (62) 上;
所述摆叶 ( 66 )设置在所述扭动部 ( 64 ) 上;
所述叶片连杆 ( 50 ) 卡接在所述摆叶 ( 66 ) 中。
6. 根据权利要求 5所述的扫风结构, 其特征在于,
所述连接肋 (62) 为长条形;
所述扭动部 (64) 为片状矩形, 设置在所述连接肋 (62) 上远离所 述基座 (70) 的一端。
7. 根据权利要求 5所述的扫风结构, 其特征在于,
所述每个摆叶 (66) 的顶部具有开口槽 (68); 所述叶片连杆 (50) 卡接在所述开口槽 (68) 中。
8. 根据权利要求 1所述的扫风结构, 其特征在于,
所述基座( 70 )上设置有凸块( 65 ), 所述凸块( 65 )上设置有沉孔 (63),
所述涡舌( 10)上设置有凹槽( 12), 在所述凹槽( 12) 中设置有卡 扣 ( 13 ),
所述凹槽 ( 12) 具有适合与所述凸块 (65) 相配合的结构, 所述卡 扣 ( 13) 具有适合与所述沉孔 (63) 相卡接的结构。
9. 如权利要求 6所述的扫风机构, 其特征在于,
所述摆叶 (66) 的厚度大于所述扭动部 (64) 的厚度。
10. —种空调器, 其特征在于, 包括根据权利要求 1至 9中任一项所述的 扫风结构。
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US10520215B2 (en) 2014-08-27 2019-12-31 Gree Electric Appliances, Inc. Of Zhuhai Air sweeping blade, air sweeping mechanism and air conditioner
US11125463B2 (en) 2014-08-27 2021-09-21 Gree Electric Appliances, Inc. Of Zhuhai Air sweeping blade, air sweeping mechanism and air conditioner

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